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Biology subjects

Guerra, G. M.

Publications and source records attributed to Guerra, G. M..

3 recordsLinked to original sources

Seasonal transcriptional profiling of malaria parasites using a new single-cell atlas of a Malian Plasmodium falciparum isolate

Asymptomatic persistence is crucial for the survival of malaria parasites in seasonal transmission settings, where transmission halts during dry months, while mosquitos are scarce and new infections rare. How Plasmodium falciparum avoids causing host symptoms or being cleared is not fully understood. Parasites that persist through the dry season circulate longer within the [~]48h replication cycle compared to parasites isolated from clinical cases, where only early stages circulate. The mechanisms promoting increased circulation and avirulent infections bridging two wet seasons remain unclear. We generated a single-cell RNA-seq reference atlas with P. falciparum erythrocytic stages of a recently adapted isolate, and with it defined the developmental stage of over 25000 parasites from six asymptomatic children at the dry-wet season transition, and nine children with clinical malaria in the wet season. Our data confirms that older parasites circulate in the dry season, and reveals transcriptional modulation of exported proteins that affect cytoadhesion of infected erythrocytes, which we validated by immuno-fluorescence microscopy.

molecular biology↗

Single cell analysis reveals CD45RClow/-TNFR2+CD29lowCD8+ Tregs with superior activity

Although described in the 70s, CD8+ regulatory T cells (Tregs) remain incompletely understood and to date, although several markers are used to define them, they remain poorly defined. The identification of reliable and consistent markers, as it was done for CD4+ Tregs, remains an urgent task and a challenge to advance our understanding. Herein, we analyzed total CD8+ T cells using single cell CITEseq and VDJ T cell receptor sequencing utilizing markers used previously to identify Tregs, in particular CD45RC described by our team and others to divide pro-inflammatory (CD45RChigh) and pro-regulatory (CD45RClow/-) CD8+ T cells in rat, mice and human. 7000 freshly isolated, non-stimulated CD8+ T lymphocytes of four healthy volunteers were analyzed. Combining at a single cell level transcriptome and protein expression data led for the first time to the characterization and definition of three subsets of regulatory CD8+ T cells. Further in vitro functional analysis based on three markers highlighted the superior suppressive activity of the CD8+CD45RClow/-TNFR2+CD29low Tregs subset. To our knowledge, this is the largest characterization of human CD8+ Tregs to date. This data resource will help improve our understanding of CD8+ T cells heterogeneity and will help to translate CD8+ Tregs to the clinic.

immunology↗

MicroRNA-221/222-expression in HSC and MPP safeguards their quiescence and multipotency by downregulating stress-independent and dependent expression of IEG and of several myelo/granulopoiesis-enhancing target genes.

The microRNA cluster-221/222 is expressed in hematopoietic stem cells (HSC) and multipotent progenitors (MPP). To study its function in hematopoiesis, we generated mice, in which this cluster is selectively deleted by Vav-cre in HSC and, thus, in all hematopoietic cells. Fluorescence-activated cell sorting analyses of the lineage-negative HSC and MPP compartments in bone marrow at unperturbed, steady state hematopoiesis detect strong activation of HSC to MPP, as well as increased granulocytes in the periphery, induced by miR-221/222-deficiency. Short-term social stress on mice also activates HSC to MPP, but the time of stress is too short to detect further increases in granulocyte numbers. Single cell deep mRNA sequencing identifies Fos as direct, and Jun as well as six other immediate early genes (IEG) as indirect targets of miR-221/222 at unperturbed hematopoiesis. Three of these IEG - Klf6, Nr4a1 and Zfp36 - have previously been found to influence myelo/granulopoiesis. Short stress induces higher levels of the same, and an even larger number of IEGs, now also in MPP, indicating, that stress and miR-221/222 both activate HSC to MPP by IEG upregulation in perturbed hematopoiesis. Furthermore, combined stress and miR-221/222-deficiency rapidly increase numbers of myelo/granulocyte progenitors (MEP, GMP) in bone marrow. Additional indirect miR-221/222-targets become detectable in MPP, of which H3f3b has previously been found to influence myelopoiesis. In serial transplantations, miR-221/222-deficient HSC retain their capacity to home to, and become resident in bone marrow, but they loose their lymphopoietic capacities, thus their multipotency. Our results suggest, that miR-221/222-expression in HSC and MPP safeguards their quiescence and multipotency by downregulating the expression of IEG and of myelo/granulopoiesis-enhancing target genes. Since miR-221/222 is also expressed in human HSC and MPP, its expression should improve clinical settings of human bone marrow transplantations.

immunology↗